RRC ID 54467
著者 Wang XC, Liu Z, Jin LH.
タイトル Drosophila jumu modulates apoptosis via a JNK-dependent pathway and is required for other processes in wing development.
ジャーナル Apoptosis
Abstract Previous studies in several model organisms have revealed that members of the Forkhead (Fkh) transcription factor family have multiple functions. Drosophila Jumeau (Jumu), a member of this family, participates in cardiogenesis, hematopoiesis and immune system homeostasis. Here, we show that loss of jumu function positively regulates or triggers apoptosis via a JNK-dependent pathway in wing development. jumu mutants showed reduced wing size and increased apoptosis. Moreover, we observed a loss of the anterior cross vein (ACV) phenotype that was similar to that observed in wings in which JNK signaling has been ectopically activated. The JNK signaling markers puckered (puc) and p-JNK were also significantly increased in the wing discs of jumu mutants. In addition, apoptosis induced by the loss of jumu was rescued by knocking down JNK, indicating a role for JNK in reducing jumu-induced apoptosis. Jumu could also control wing margin development via the positive regulation of cut expression, and the observed wing margin defect did not result from a loss of jumu-induced apoptosis. Further, jumu deficiency in the pupal wing could induce multiple wing hairs via a Rho1-mediated planar cell polarity pathway, but abnormal Rho1 expression was not why jumu loss induced apoptosis via a JNK-dependent pathway in wing discs.
巻・号 24(5-6)
ページ 465-477
公開日 2019-6-1
DOI 10.1007/s10495-019-01527-x
PII 10.1007/s10495-019-01527-x
PMID 30796611
MeSH Animals Apoptosis* / genetics Cell Death / genetics Cell Proliferation / genetics Drosophila / genetics Drosophila / growth & development Drosophila / metabolism Drosophila / physiology* Drosophila Proteins / genetics Drosophila Proteins / metabolism* Gene Expression Regulation, Developmental Gene Knockdown Techniques JNK Mitogen-Activated Protein Kinases / genetics JNK Mitogen-Activated Protein Kinases / metabolism* Loss of Function Mutation Phenotype Phosphoprotein Phosphatases / metabolism Signal Transduction / genetics Transcription Factors / genetics Transcription Factors / metabolism* Wings, Animal / growth & development Wings, Animal / metabolism Wings, Animal / pathology Wnt1 Protein / metabolism rho GTP-Binding Proteins / metabolism
IF 4.021
引用数 1
リソース情報
ショウジョウバエ 5115R-2